Ion Channel Reconstitution Platform Allowing Simultaneous Recording from Multiple Bilayer Sites

Ion Channel Reconstitution Platform Allowing Simultaneous Recording from Multiple Bilayer Sites
Author :
Publisher :
Total Pages : 63
Release :
ISBN-10 : OCLC:809948609
ISBN-13 :
Rating : 4/5 (09 Downloads)

Book Synopsis Ion Channel Reconstitution Platform Allowing Simultaneous Recording from Multiple Bilayer Sites by : Shankar Ramakrishnan

Download or read book Ion Channel Reconstitution Platform Allowing Simultaneous Recording from Multiple Bilayer Sites written by Shankar Ramakrishnan and published by . This book was released on 2011 with total page 63 pages. Available in PDF, EPUB and Kindle. Book excerpt: ABSTRACT The purpose of this study is to demonstrate that stable lipid bilayers can be set up on an array of silicon micropores and can be used as sites for self-inserting ion-channel proteins which can be studied independently of each other. In course of this study an acrylic based holder was designed and machined to ensure leak-free fluidic access to the silicon micropores and physical isolation of the individual array channels. To measure the ion-channel currents, we simulated, designed and manufactured low-noise transimpedance amplifiers and support circuits based on published patch clamp amplifier designs, using currently available surface-mount components. This was done in order to achieve a reduction in size and costs as well as isolation of individual channels without the need for multiplexing of the input. During the experiments performed, stable bilayers were formed across an array of four vertically mounted 30 m silicon micropores and OmpF porins were added for self insertion in each of the bilayers. To further demonstrate the independence of these bilayer recording sites, the antibiotic Ampicillin (2.5 mM) was added to one of the fluidic wells. The ionic current in each of the wells was recorded simultaneously. Sub-conductance states of Ompf porin were observed in two of the measurement sites. In addition, the conductance steps in the site containing the antibiotic could be clearly seen to be larger compared to those of the unmodified site. This is due to the transient blocking of ion flow through the porin due to translocation of the antibiotic. Based on this demonstration, ion-channel array reconstitution is a potential method for efficient electrophysiological characterization of different types of ion-channels simultaneously as well as for studying membrane permeation processes.


Ion Channel Reconstitution Platform Allowing Simultaneous Recording from Multiple Bilayer Sites Related Books

Ion Channel Reconstitution Platform Allowing Simultaneous Recording from Multiple Bilayer Sites
Language: en
Pages: 63
Authors: Shankar Ramakrishnan
Categories: Amplifiers (Electronics)
Type: BOOK - Published: 2011 - Publisher:

DOWNLOAD EBOOK

ABSTRACT The purpose of this study is to demonstrate that stable lipid bilayers can be set up on an array of silicon micropores and can be used as sites for sel
Cellular and Molecular Neurophysiology
Language: en
Pages: 602
Authors: Constance Hammond
Categories: Psychology
Type: BOOK - Published: 2024-06-03 - Publisher: Elsevier

DOWNLOAD EBOOK

Cellular and Molecular Neurophysiology, Fifth Edition is the only up-to-date textbook on the market that focuses on the molecular and cellular physiology of neu
Molecular Biology of The Cell
Language: en
Pages: 0
Authors: Bruce Alberts
Categories: Cytology
Type: BOOK - Published: 2002 - Publisher:

DOWNLOAD EBOOK

Piezo Channels
Language: en
Pages: 350
Authors:
Categories: Science
Type: BOOK - Published: 2017-07-17 - Publisher: Academic Press

DOWNLOAD EBOOK

Piezo Channels, Volume 79, the latest volume in the Current Topics in Membranes series provides the necessary membrane research to assist readers in discovering
Single-Channel Recording
Language: en
Pages: 777
Authors: Bert Sakmann
Categories: Science
Type: BOOK - Published: 2009-10-03 - Publisher: Springer Science & Business Media

DOWNLOAD EBOOK

Edited by the 1991 winners of the Nobel Prize in Physiology or Medicine, this Second Edition includes new chapters covering such applications as capacitance mea